Showing posts with label alternative energy. Show all posts
Showing posts with label alternative energy. Show all posts

Saturday, April 2, 2016

SE4All Highlights Plans for Implementing SDG 7

25 March 2016: The Special Representative of the UN Secretary-General (SRSG) for Sustainable Energy for All (SE4All), Rachel Kyte, highlighted challenges to achieving Sustainable Development Goal (SDG) 7 (Ensure access to affordable, reliable, sustainable and modern energy for all).

Briefing UN Member States and civil society, she also provided an update on the SE4All initiative's plans for supporting implementation of the Goal.

Kyte emphasized that Goal 7 has three “pillars,” addressing energy poverty, technological advancement, and investment in energy efficiency. Stressing the interlinked nature of the Goal, she said the first pillar, addressing energy poverty, is essential to leaving no one behind, noting that the electricity access gap undermines education, productivity and economic growth, while the gap in access to clean cooking fuels is detrimental to health and gender inequality. On technological advancement, Kyte noted the past decade's reductions in the cost and complexity of renewable energy, which makes on-shore wind, solar photo voltaic, and other technologies more competitive with fossil-based energy sources. On energy efficiency, she said greater investment has made it possible to provide basic electricity services using much less power.

Despite this positive progress, Kyte warned that global economic trends have slowed the momentum for electrification, renewables, efficiency and clean cooking. She said the global energy transition is not taking place at a sufficient pace to meet the temperature goal set out in the Paris Agreement on climate change, or the broader development goals expressed in the 2030 Agenda.

Kyte also stressed that the financial needs to achieve SDG 7, which are estimated at over US$1 trillion annually, will need to come from both private and public sectors. She highlighted the importance of small-scale, private investments to develop renewable energy in many African countries.

On the role of the SE4All initiative in supporting the achievement of SDG 7, Kyte said the Forum's 2017 meeting will assess progress and provide substance for the High-level Political Forum on sustainable development (HLPF) and the UN system as a whole in its review of progress towards the SDGs. In the meantime, SE4All is developing a framework for addressing challenges faced by Member States in achieving SDG 7. Member States will have opportunities to provide input on this framework throughout May 2016, Kyte said, and the SE4All Advisory Board will consider the framework at its meeting, on 15-16 June 2016. [Event Webcast] [SE4All Website]

 

Monday, March 28, 2016

This Caribbean Island Just Went 100% Renewable - Via Winston Connolly

Bonaire (pop. 14,500), a small island off the coast of Venezuela, is famous for its beautiful marine reefs, which are visited by 70,000 tourists every year.

Bonaire

What many of the tourists don't realize is that the majority of the electricity powering their needs comes from renewable energy. Yet for the residents of Bonaire, the switch from fossil-fueled to renewable energy systems has made a world of difference.

Like many Caribbean islands, Bonaire originally relied on diesel fuel to generate electricity for residents, with a peak demand of 11 megawatts (MW). This fuel had to be shipped in from other nations, resulting in high electricity prices for Bonaire residents, along with uncertainty about when and how much prices might increase with changing fuel costs.

In 2004, everything changed when a fire destroyed the existing diesel power plant. Although tragic, the situation provided an opportunity for Bonaire to consider what kind of new electricity system to build. Temporary diesel generators were rented to provide power for the short term. Meanwhile, the government and local utility began working together to create a plan that would allow Bonaire to reach a goal of generating 100 percent of its electricity from renewable sources.

Bonaire's Electricity System Transformation

The result is a transformed electricity system on Bonaire. The island is now home to 12 wind turbines with a total of 11 MW of wind power capacity, which contribute up to 90 percent of the island's electricity at times of peak wind, and 40-45 percent of its annual electricity on average.

Battery storage (6 MWh) is included in order to take advantage of available power in times of excess wind, and provide that stored electricity in times of low wind. The battery also boosts the reliability of the overall system—it is capable of providing 3 MW for over two minutes, allowing time for additional generation to be started when there is a sudden drop in wind.

The Bonaire system also includes 14 MW of diesel generation, five total generators, which provide the necessary power to meet the load when there is not enough wind power available. The generators are equipped to run on both traditional diesel as well as biodiesel. The next steps in the island's energy transformation involve using local algae resources, grown in the large salt flats on the island, to create biofuel, which can then be used in the existing generators. This will allow Bonaire to operate a 100 percent renewable electricity system—with on average 40–45 percent from wind and 55-60 percent from biodiesel.

The new electricity system led to more reliable electricity, more employment opportunities, reduced dependence on oil (and its fluctuating prices), and a reduction in electricity bills. Bonaire residents currently pay $0.22/kWh for electricity, much lower than prices on other nearby Caribbean islands, which are often $0.36/kWh or above.

When oil prices spiked in 2008, while Bonaire was still using temporary diesel generators before making its transition to renewables, electricity prices on the island reached $0.50/kWh. The new electricity system also created jobs for the construction and ongoing operation of the wind farm, and for research and development of algae production capabilities and conversion to biofuel. Additional employment opportunities will be created for continuing algae production and operation of the biodiesel plant.

The success of the updated electricity system on Bonaire provides an important example to other nearby islands of the opportunity to achieve high levels of renewable energy penetration.

http://www.businessinsider.com/bonaire-goes-renewable-energy-2015-1

 

Thursday, March 24, 2016

Caribbean Green Economy Project

Within the Caribbean, there is a growing awareness of the need for a new economic paradigm for inclusive and sustainable development, in order to deliver solutions for the most pressing challenges which are made worse by international economic and environmental crises.

In the backdrop of the limited diversification of the countries’ economies and their dependence on natural resources, green economy offers a viable option to increase competitiveness and resilience of the region’s economies and merge prosperity and growth for all with sustainability.

"I commit my Government to working assiduously with the Social Partnership to ensure that the measures indentified in Barbados’ Green Economy Scoping Study, which can contribute to a more prosperous and environmentally sensitive Barbados, will be implemented expeditiously" said Freundel J. Stuart, Prime Minister of Barbados.

“We see a green economy not only as the area of renewable energy, but we see the green economy as a means of providing new opportunities for our people in St. Kitts,” said Earl Asim Martin, Deputy Prime Minister of St. Kitts and Nevis.

"We are also showing that it is possible to create a better, environmentally sustainable national economy without compromising our citizens’ legitimate aspirations for increased prosperity," said Bharrat Jagdeo, Former Prime Minister of Guyana

Effective green economy strategies and programmes must address barriers to change that affect the whole Caribbean region. In searching for alternatives to “business-as-usual”, emphasis should be placed on redirecting investments and creating economic incentives that lead to sustainable development and poverty eradication.

UNEP, in cooperation with the CARICOM Secretariat and with financial support of the European Union, is supporting the region through a Caribbean Green Economy Initiative.

The outcomes of project, as well as the experiences and lessons learned during its implementation should offer ideas and opportunities for scaling up green economy transition in other countries and regions especially in island states in the Pacific, Africa and elsewhere.

Please download the project flyer on green economy in the Caribbean here.

 

Thursday, August 27, 2015

Hawaii Flips Switch on World’s Largest Ocean Harvesting Clean Energy Plant

Hawaii is definitely ahead of the curve when it comes to renewable energy.

In June, the Aloha state became the first state to mandate that all of its electricity come from renewable sources no later than 2045. Along with other islands, its charging ahead with wind, solar and smart grid systems. But now, the state is home to the first fully closed-cycle Ocean Thermal Energy Conversion (OTEC) plant in the U.S.

OTEC is “a process that can produce electricity by using the temperature difference between deep cold ocean water and warm tropical surface waters,” Makai Ocean Engineering, the company that built the plant, explains on its website. “OTEC plants pump large quantities of deep cold seawater and surface seawater to run a power cycle and produce electricity.” Makai touts OTEC as a constant, clean energy source that is “capable of providing massive levels of energy.”

Watch this short video for an explanation of how it works.

Makai staff explain in the video that the potential for OTEC is immense because the source of the energy is just sunlight.

“About 70 percent of the sunlight coming to Earth lands on the ocean. Most of that is captured in the surface layers of the ocean water in the form of heat,” says Duke Hartman, vice president of business development at Makai. “That’s beautiful because we can extract that energy 24/7 and use that power any time we want it, totally eliminating the need for an energy storage system.”

The 105-kilowatt demonstration plant on the Big Island, which cost about $5 million to build, only generates enough electricity to power 120 homes. But to date, it’s the largest such plant in the world. And it’s promising enough for the U.S. Navy to be investing in it. The Navy has a target for 50 percent of its shore-based energy to come from alternative sources in five years.

While the industry is still very much in its infancy, Makai believes it won’t be long until it takes off.

“The plant is dispatchable, meaning the power can be ramped up and down quickly to accommodate fluctuating demand and intermittent power surges from solar and wind farms,” Hartman told Bloomberg.

The company estimates that all of Hawaii’s electricity needs could be met by about 12 commercial-scale OTEC plants. They already have plans to construct a 1-megawatt facility in Japan, and Hartman says Brazil, Sri Lanka, the Maldives and West African nations all have potential.

“Anywhere tropical with deep water is ideal, especially if they import their fuel,” says Hartman.

The biggest challenge remains financing, explains Hartman. “We need a visionary investor to get us past the expensive pilot project into the large-scale commercial projects,” he said.

According to the company’s website, an offshore commercial-scale OTEC plant could prevent burning roughly 1.3 million barrels of oil each year, produce electricity at roughly $0.20 per kilowatt-hour and prevent more than half a million tons of carbon emissions per year.

 

Friday, August 14, 2015

Op-Ed: The Challenge of Small Island Developing States

The United Nations Office of the High Representative for the Least Developed Countries, Landlocked Developing Countries and Small Island Developing States defines small island developing states, or SIDS, as "a distinct group of developing countries facing specific social, economic and environmental vulnerabilities."

These countries are across the globe in the Caribbean, the Pacific, Atlantic and Indian Oceans, and the Mediterranean and South China Sea.

In addition to common difficulties faced by developing countries, SIDS have an additional series of challenges to cope with that require special assistance from the international community.

These challenges were highlighted in the 1994 Barbados Programme of Action (BPOA) and the Mauritius Strategy of Implementation (MSI) of 2005, both of which stated that the difficulties SIDS face in the pursuit of sustainable development are particularly severe and complex.

Recognition of these issues was reinforced in September of 2014 when Member States of the United Nations officially adopted the Small Island Developing States Accelerated Modalities of Action, known as the SAMOA Pathway.

The challenges that SIDSs face are varied, but all conspire to constrain their development processes.

They typically do not have a wide base of resources available to them, and thus do not benefit from cost advantages that this could potentially generate.

Coupled with small domestic markets, they experience difficulties in profiting from globalisation and trade liberalisation and are cripplingly reliant on external and remote markets with limited opportunities for the private sectors.

The cost of provision of energy, infrastructure, transport and communication are high, and along with high population densities, creates increased pressure on these already limited markets.

These developing countries generally have a heavy reliance on tourism and services; however, as a consequence of their low resilience and location, they are also heavily affected by disasters due to frequent natural hazards.

The unique characteristics and vulnerabilities facing SIDS were first addressed by the international community at the Earth Summit (United Nations (UN) Conference on Environment and Development) in Brazil in 1992.

The SIDS case was the focus of Agenda 21, a non-binding, voluntarily implemented plan of action of the Summit, committed to addressing the problems of sustainable development of SIDS.

This plan involved adopting methods to enable SIDS to function and cope effectively with environmental change, and to mitigate the impacts and reduce the threats posed to their marine and coastal resources.

Following Agenda 21, the Barbados Programme of Action was introduced in 1994, in an effort to provide further aid and support to SIDS. Similarly, its ultimate aim was to improve sustainable development.

It highlighted the challenges of converting Agenda 21 into precise strategies, movements and procedures at the national, regional and international level and listed fifteen areas of priority for specific action.

Five further areas were selected by the UN General Assembly in 1999, recognising their urgency. These five were: climate change, as the rising sea level could render some low-lying SIDS submerged; natural and environmental disasters and climate variability, with an emphasis of improving disaster preparedness and recovery; freshwater resources, preventing water shortages as demand increases; coastal and marine resources, promoting the protection of coastal ecosystems and coral reefs; energy, developing solar and renewable energy in order to lessen dependence on imported oil; and finally tourism, focusing on the management of the growth of the tourism industry and the protection of the environment and cultural integrity.

The 2005 Mauritius Strategy of Implementation further complemented the BPOA.

It gave recognition to the challenges that are unique to SIDS, and proposed further action towards their sustainable development.

The MSI emphasised the location of SIDS in the most vulnerable regions of the world with respect to natural and environmental disasters and their rapidly increasing impact.

It made call for a global early warning system covering threats such as tsunamis, storm surges and cyclones, and stressed that some major adverse effects of climate change are already being observed.

Further, the MSI recognised the importance of international trade for building resilience and sustainable development in SIDS, and established the necessity for international institutions, including financial ones, to pay more specific attention to the structural drawbacks of SIDS.

The MSI went further on matters of trade, stating that "most small island developing states, as a result of their smallness, persistent structural disadvantages and vulnerabilities, face specific difficulties in integrating into the global economy".

More recently, in September 2014, the Small Island Developing States Accelerated Modalities of Action, also known as the SAMOA Pathway, was adopted. As in the case of the previous adoptions, the strategy recognises the need to support and invest in SIDS so that they can achieve sustainable development. Distinguishing the Samoa Pathway slightly from the BPOA and the MSI is the idea of investing in the education and training of the people of SIDS.

The aim of this idea was to create "resilient societies and economies, with full and productive employment, social protection and decent work for all", and to provide "full and equal access to quality education at all levels", the latter which is a vital ingredient for achieving sustainable development.

The promotion of education for sustainable development is especially crucial for SIDS that are under direct threat from climate change, as it will "empower communities to make informed decisions for sustainable living rooted in both science and traditional knowledge". Finally, the SAMOA Pathway supports efforts "to promote and preserve cultural diversity and intercultural dialogue, which provide a mechanism for social cohesion and, thus, are essential in building blocks for addressing the challenges of social development".

Many SIDS have recognized the need to embrace sustainability through their own internal processes, however, without external aid from the international community, the required change will not come quickly enough. Following on the adoption of the Samoa Pathway, 2015 is rapidly becoming a watershed year for global processes of importance to SIDS.

Convergence is occurring across a broad spectrum of activities as this year has seen the international community deliberate on the Post 2015 framework for disaster risk reduction which culminated in the adoption of the Sendai Framework, new expected agreements in the post 2015 development agenda with Sustainable Development Goals replacing the Millennium Development Goals. New agreements are also expected on how development is financed and there remains expectation of a new international agreement on climate change.

Given their far reaching impact, these developments are critical, particularly when viewed from the perspective of the small island developing state.

Notwithstanding the global consensus, serious challenges remain for SIDS and for the foreseeable future; they will remain a special case for sustainable development.

However, with a global consensus and an avid commitment to the advancement of sustainable development in these countries, positive change is most certainly on the horizon.

George Nicholson is the Director of Transport and Disaster Risk Reduction and Anastasia Ramjag is the Research Assistant of the Directorate of Transport and Disaster Risk Reduction of the Association of Caribbean States.

Note: the opinions expressed in Caribbean Journal Op-Eds are those of the author and do not necessarily reflect the views of the Caribbean Journal. More

 

 

Friday, August 7, 2015

What is holding back the Cayman Islands from implementing more solar and wind energy?

The Caribbean appears to be the ideal location for renewable energy development. Petroleum resources are scarce and renewable resources such as solar, wind and geothermal are plentiful. Energy prices are high as there is no opportunity for economy of scale benefits that large land masses enjoy. Added to that, climate change impacts pose a major threat to the region’s small-island economies that are largely dependent on tourism and agriculture.

Despite this, most Caribbean nations still use imported diesel or oil to generate 90-100% of their energy. So what has been the barrier to using renewables? Many people have pointed to the cost factor. Small economies mean that in most cases countries have difficulty in financing renewable energy projects that require high upfront capital. Also, regulations have been slow in setting clear rules for grid interconnection. These factors have led some international investors and developers to be cautious about entering the Caribbean market. http://bit.ly/1NeB0fj

 

 

Monday, July 13, 2015

Caribbean States 'lighting path' towards sustainable future, says UN chief in Barbados

"I want to salute Caribbean countries for taking on ambitious renewable energy targets. By 2020, for example, Barbados will be one of the world's top five leading users of solar energy on a per capita basis. You are lighting the path to the future,"


Secretary-General Ban Ki-moon My main message to you is to remain fully engaged and keep working with us to strengthen our partnership during this vital year for humanity. Together, we can build a better, more sustainable world, for all.said during a high-level symposium focused on sustainable development in the Caribbean.

This meeting was among the UN chief's first stops in Barbados, where later on Thursdayhe is expected to make opening remarks to the 2015 Caribbean Community (CARICOM) Summit, and where tomorrow, he will, among others, hold an interactive dialogue at the University of the West Indies.


"Twenty years ago, this very building was the site of the First Global Conference on Small Island Developing States that adopted the Barbados Programme of Action – the first compact between this group and the international community," he noticed


For small island developing States, Ban added, this space is "hallowed ground."

Encouraged by the presence of so many leaders of governments, regional and international organizations, the private sector, academia, and civil society, the Secretary-General highlighted the "continuing Caribbean commitment to put our world on a safer, more sustainable and equitable pathway," a few days from theThird International Conference on Financing for Development in Addis Ababa, Ethiopia.

"As leaders of some of the most vulnerable countries in the world, you don't need to be told that our planet is at grave risk. You are on the climate frontlines. You see it every day," he continued.

Convinced that sustainable development and climate change are "two sides of the same coin," the UN top official went on to say that this generation could be the first to end global poverty, and the last to prevent the worst impacts of global warming "before it is too late."


To get there, he underlined, the international community must make sure that the proposed sustainable development goals (SDGs) are "focused, financed and followed up – with real targets, real money and a real determination to achieve them."


Considering these goals as a sort of a "to-do list for people and the planet", Ban emphasized that it will take partnerships to make that happen. In that regard, he said, the Third International Conference on Small Islands Developing States in Samoa last year laid a pathway for collective action and success within the post-2015 development agenda.


But, as the world prepares for a new sustainability framework and the sustainable development goals, a number of critical partnership areas must be strengthened, in particular the need for capacity building; financing; access to technology; and improved data collection and statistics.

Member States also must continue working together to link the global agenda to regional agendas and to deepen regional integration and to address the "unique needs and vulnerabilities" of small island developing states and middle-income countries, such as the debt challenge.

"And we need to keep forging the way forward towards a low-carbon, climate-resilient development pathway that will benefit both people and the planet," the Secretary-General underlined.

He gave the assurance that, through the Green Climate Fund, and in working with world leaders, he will continue to insist that small islands and least developed countries are top funding priorities.


"My main message to you is to remain fully engaged and keep working with us to strengthen our partnership during this vital year for humanity. Together, we can build a better, more sustainable world, for all."

Later, in an address to an event on ending violence against women, the Secretary-General said the Caribbean has among the highest rates of sexual assault in the world. Three Caribbean countries are in the global top ten for recorded rapes. Moreover, he noted that in the eastern Caribbean, UNICEF estimates that child sexual abuse rates are between 20 and 45 per cent – meaning at least one in five precious children are affected. Most are girls who have no choice but to live close to their attacker.

"They desperately need our help. Too many women are afraid to seek help. One study showed that up to two thirds of all victims suffer without ever reporting the crime. I am outraged by this. Shame belongs to the perpetrators – not the victiWe have to change mindsets – especially among men," declared the UN chief.

In that light, he said he was proud to be the first man to sign onto the UN's HeForShecampaign, and he invited more men to take the HeForShe pledge.

"I encourage you to join UNICEF's End Violence global campaign. And every day, I count on all of you to work for true equality."


In the margins of the 36th meeting of the Conference of Heads of Government of the Caribbean Community in Barbados, the Secretary-General met with Prime Minister Freundel Stuart, and Minister for Foreign Affairs and Foreign Trade, Maxine McClean, of Barbados, a country he congratulated for its upcoming leadership of CARICOM. More

 

 

Wednesday, July 8, 2015

June 2015 Sustainable Energy Finance Update

In the Caribbean, the CDB signed a €4.45 million grant contribution agreement with the EU-Caribbean Investment Facility (EU-CIF) in support of the Sustainable Energy for the Eastern Caribbean (SEEC) Programme, which will provide technical assistance and investment grants for sustainable energy solutions in six countries: Antigua and Barbuda, Grenada, Dominica, St. Kitts and Nevis, St. Lucia, and St. Vincent and the Grenadines. [CDB Press Release] More


 

 

CARICOM Countries Address Renewable Energy, SIDS’ Development, Climate Change

CARICOM 5 July 2015: The 36th Regular Meeting of the Conference of Heads of Government of the Caribbean Community (CARICOM) focused on energy, bolstering education systems, and Haiti's "looming humanitarian crisis," among other issues. A high-level symposium on sustainable development convened on the sidelines of the Conference.

During the meeting, held on 2-4 July 2015, in Bridgetown, Barbados, leaders welcomed the establishment of a Caribbean Centre for Renewable Energy, which will be hosted by Barbados. The Centre will act as the implementation hub for sustainable energy activities and projects within the Caribbean. The Government of Trinidad and Tobago proposed creating a Caribbean Energy Fund, which participants supported.

Discussions at the Conference also addressed: access to concessional development financing for small island developing States (SIDS), with leaders advocating for a vulnerability measurement instead of gross domestic product (GDP) to determine economic health; a climate agreement that would limit warming to below 1.5°C compared to pre-industrial levels; and decision-making mechanisms in the region.

The Conference resulted in a communiqué that addresses: sustainable development; resilience building and wealth creation for Caribbean development, and the role of Caribbean universities; science and technology; and the promotion of sustainable energy. Participants also adopted 'The CARICOM Declaration for Climate Action,' which outlines the Caribbean region's priorities for the 2015 climate agreement, including loss and damage, limiting warming to below 1.5°C, a compliance mechanism, and finance measures, including improved and privatized access to funds by SIDS.

Speaking during the high-level symposium on sustainable development, UN Secretary-General Ban Ki-moon said that, by 2020, Barbados will be one of the world's top five solar energy users on a per capita basis, and Caribbean countries "are lighting the path to the future." Noting that sustainable development and climate change are "two sides of the same coin," Ban reiterated that this generation could be the first to end global poverty, and the last to prevent the worst impacts of climate change, "before it is too late."

Ban underscored that the proposed Sustainable Development Goals (SDGs) must be "focused, financed and followed up," and that partnerships must be strengthened with regard to capacity building, financing, access to technology, and improved data collection and statistics.

Ban also called on countries to: link the global agenda to regional agendas; deepen regional integration; focus on the needs and vulnerabilities of SIDS and middle-income countries (MICs), including by addressing the debt challenge; and achieve a low-carbon, climate-resilient development pathway. He said he will continue working to guarantee that SIDS and the least developed countries (LDCs) are top funding priorities of the Green Climate Fund (GCF), among other sources.

http://sids-l.iisd.org/news/caricom-countries-address-renewable-energy-sids-development-climate-change/

 

 

Monday, June 29, 2015

On The Legal Front: Climate Science, Awareness and Solutions (CSAS)

The only way to win the carbon war soon enough to avert unacceptable casualties of young people and other life on the planet is to carry out the battle on several fronts simultaneously.

Dr. James Hansen

(That’s the reason for the expansive name of our organization, Climate Science, Awareness and Solutions (CSAS), and also the reason that we support disparate organizations, including Citizens Climate Lobby, Our Children’s Trust, 350.org…).

We sometimes ask if we are using our time right, spending too much time on the legal front?[1] After all, the end game begins only when we achieve an across-the-board transparent (thank you, Pope Francis, for recognizing that!) carbon fee. Focus on a carbon fee is high priority because of the danger that Paris agreements may amount to little more than national “goals” and, what’s worse, more effete ineffectual “cap-and-trade” shenanigans. A focus on science is also needed, as there is still no widespread recognition of the urgency of emission reductions, and better understanding of the science is required to achieve a good strategy to restore energy balance.

The legal approach complements recognition of the moral dimensions of climate change. Can you imagine civil rights advancing without help of the courts? Yet courts will not likely move, and they did not move in the case of civil rights, until the public recognizes the moral dimension and begins to demand action. So it is also essential to get the public more widely involved.

When a judge issues a ruling it has certain gravity. It seems that courts retain more respect with the public than legislatures do. So it is wonderful to report two important legal victories this week. Both are due to remarkably capable, determined individuals, who simply will not give up.

First, the Dutch case. The Netherlands, which will cease to exist within a century or so if the world stays on its present carbon path, is an appropriate place for the first European case in which citizens attempt to hold a state responsible for its inaction in the face of clear danger. The Dutch district court in the Hague ruled for the plaintiff, Urgenda, an environmental organization. The court ordered the Dutch government to reduce emissions 25% by 2020, a stiff order. The hero behind the scenes was lawyer, legal scholar, and author Roger Cox, who has relentlessly pursued this action for the past several years on behalf of young people and future generations.

In Seattle, the King County Superior Court Judge ordered the State to reconsider the petition of eight youth, who brought their case with the help of Our Children’s Trust, requesting that the state reduce emissions consistent with dictates of the best available science. The latter was provided in testimony to the court by Pushker Kharecha, Deputy Director of CSAS, based on our paper in PLOS One, which was not disputed by Washington State, and which calls for a reduction of emissions by 6% per year. The relentless behind-the-scenes champions in this case are Julia Olson (director of Our Children’s Trust) and legal scholar Mary Woods.

Government lawyers, in the Netherlands and Washington State, scurried off after the verdicts to prepare appeals. If they win their appeals, it will not deter the youth or their supporters, who must be relentless in advancing the essential legal front. More on other legal plans soon. More

[1] At present I am involved in 11 legal cases. It could be more – it hurts to turn down requests, but there is only so much time. It would be fewer cases, if I didn’t have the help of a brilliant young lawyer, Dan Galpern.

 

Thursday, May 7, 2015

This machine makes salty water drinkable

The American engineers who traveled to rural India two years ago believed they were going to help poor villagers get rid of microbes in their drinking water. But soon after their arrival, they began hearing about a different problem: salt.

“People kept talking about the salt in the water,” recalled Natasha Wright, a doctoral candidate who was part of the team from Massachusetts Institute of Technology that made the journey in 2013. “The groundwater beneath the villages was brackish.”

Those complaints inspired new technology that could some day supply water to thirsty villages and drought-stricken farms in other parts of the world. The MIT team developed a solar-powered water desalination system that uses the sun’s energy to turn brackish liquid into contaminant-free water safe for drinking and for crops.

While there are dozens of different desalination systems in use around the world, MIT’s is uniquely designed to be small, relatively cheap and 100-percent solar-powered, making it suitable for remote areas where the electricity supply is unreliable or non-existent, Wright said.

The panel of judges last month deemed the machine’s potential so impressive that they gave the inventors the $140,000 “Desal Prize,” an award sponsored by Securing Water for Food, a joint project of the U.S. Agency for International Development and the governments of Sweden and the Netherlands. Some 68 engineering teams from 29 countries competed in the contest, hosted by the Interior Department’s Bureau of Reclamation in Alamogordo, N.M.

“Providing a sustainable water supply is important for the West, the country and the world,” Esteva Lopez, the department’s reclamation commissioner, said after the top prize was awarded to MIT and its research partner, Jain Irrigation Systems.

Wright said she and fellow engineers from MIT’s Global Engineering and Research Laboratory became aware the extent of saltwater intrusion in northern and central Indian aquifers during visits to investigate solutions for widespread water contamination in India. In addition to problems with bacterial contamination, the groundwater in much of rural India is brackish, having a salt content lower than seawater but still high enough to cause problems. In some of the villages visited by the MIT researchers, locals were trying unsuccessfully to remove the salt using filters and chemicals.

“People complained about the salty taste,” Wright said, “and the salt ruined their cooking pots.”

Traditional desalination systems are expensive and require substantial amounts of electricity to operate, making them impractical for India’s remote farming communities. Instead, the MIT researchers designed a system that removes salt through a process called electrodialysis, using a series of electrodes and membranes to remove the salt. They added solar panels and batteries to run the pumps and charge the electrodes. Then, in a final step, they installed ultraviolet light arrays to kill any microbes remaining in the water.

The finished prototype is small enough to fit in a tractor-trailer and includes photovoltaic cells to supply the electricity. The system, when fully operational, can supply the basic water needs of a village of between 2,000 and 5,000 people, MIT officials said. Although the prototype was more expensive, Wright said the team is hopes to lower the costs of a village-sized unit to about $11,000.

Such a lower-power system is useful mainly for treating brackish water and not seawater, which contains far more salt. But the prototype now being tested could handle water that contains salt concentrations of up to 4,000 parts per million, meaning it would work in about 90 percent of India’s wells, Wright said. Seawater’s salt concentration averages about 35,000 parts per million.

“There are places where this kind of system won’t work, but the advantage is, it uses half the energy of other systems,” said Wright. And, thanks to solar cells, “you can be fully off the grid.” More

 

Global carbon dioxide levels break 400ppm milestone

Record carbon dioxide (CO2) concentrations in the atmosphere were reported worldwide in March, in what scientists said marked a significant milestone for global warming.

Figures released by the US science agency Noaa on Wednesday show that for the first time since records began, the parts per million (ppm) of CO2 in the atmosphere were over 400 globally for a month.

The measure is the key indicator of the amount of planet-warming gases man is putting into the atmosphere at record rates, and the current concentrations are unprecedented in millions of years.

The new global record follows the breaking of the 400ppm CO2 threshold in some local areas in 2012 and 2013, and comes nearly three decades after what is considered the ‘safe’ level of 350ppm was passed.

“Reaching 400ppm as a global average is a significant milestone,” said Pieter Tans, lead scientist on Noaa’s greenhouse gas network.

“This marks the fact that humans burning fossil fuels have caused global carbon dioxide concentrations to rise more than 120ppm since pre-industrial times,” added Tans. “Half of that rise has occurred since 1980.”

World leaders are due to meet in Paris for a UN climate summit later this year in an attempt to reach agreement on cutting countries’ carbon emissions to avoid dangerous global warming.

Dr Ed Hawkins, a climate scientist at the University of Reading told the Guardian: “This event is a milestone on a road to unprecedented climate change for the human race. The last time the Earth had this much carbon dioxide in the atmosphere was more than a million years ago, when modern humans hadn’t even evolved yet.

“Reaching 400ppm doesn’t mean much in itself, but the steady increase in atmospheric greenhouse gases should serve as a stark reminder of the task facing politicians as they sit down in Paris later this year.”

Greenhouse gas emissions from power plants stalled for the first time last year without the influence of a strict economic recession, according to the International Energy Agency, an influential thinktank.

Nick Nuttall, a spokesman for the UN Framework Convention on Climate Change (UNFCCC) which oversees the international climate negotiations, said: “These numbers underline the urgency of nations delivering a decisive new universal agreement in Paris in December – one that marks a serious and significant departure from the past.

“The agreement and the decisions surrounding it needs to be a long term development plan providing the policies, pathways and finance for triggering a peaking of global emissions in 10 years’ time followed by a deep, decarbonisation of the global economy by the second half of the century.”

But even if manmade emissions were dramatically cut much deeper than most countries are planning, the concentrations of CO2 in the atmosphere would only stabilise, not fall, scientists said.

James Butler, director of Noaa’s global monitoring division, said: “Elimination of about 80% of fossil fuel emissions would essentially stop the rise in carbon dioxide in the atmosphere, but concentrations of carbon dioxide would not start decreasing until even further reductions are made and then it would only do so slowly.”

Concentrations of CO2 were at 400.83ppm in March compared to 398.10ppm in March 2014, the preliminary Noaa data showed. They are are expected to stay above 400pm during May, when levels peak because of CO2 being taken up by plants growing in the northern hemisphere.

Noaa used air samples taken from 40 sites worldwide, and analysed them at its centre in Boulder, Colorado. The agency added that the average growth rate in concentrations was 2.25ppm per year from 2012-2014, the highest ever recorded for three consecutive years. More

 

Saturday, May 2, 2015

Caribbean “island laboratories” making a case for renewable, says Mazurier

In early March, Stéphane Tromilin, a sustainable energy attaché in the French government, gave a United Nations webinar on the French government’s work on French islands.

In it, he spent most of the time discussing the unique challenges of islands, specifically those in the Caribbean like Guadeloupe, but also noted an island’s value as “laboratories to develop renewable energy solutions.”

Christophe Mazurier, a European financier and climate defender, has seen these laboratories in action, specifically in the Caribbean, where he has a home in the Bahamas. While many of these nations are at greater risk of climate disasters - in the form of devastating hurricanes and other storms - than most other places on earth, many refuse to become victims of the global intransigence on climate change. Instead, many Caribbean nations are taking it upon themselves to be the change they wish to see in their developed-nation counterparts.

Guadeloupe, the overseas French territory mentioned earlier, is getting nearly 30 percent of its energy from solar, a number on par with climate leaders Germany. Aruba gets 20% of its energy from wind, and is aiming to be totally sustainable by 2020. Ten island nations, including the Bahamas, the British Virgin Islands, Grenada, Dominica and more have joined the Ten Island Challenge, launched by Richard Branson as a means to give these Caribbean island clear renewable goals and support them in meeting those goals.

Mazurier says that in many ways, the Caribbean’s move to solar was preordained. Not because they are at the forefront of climate change susceptibility, but because of their incredibly high energy costs. Most Caribbean island nations pay around 33 cents per kWh of energy, while for comparison the United States pays 10 cents per kWh. Even with the price of fuel bottoming out, and energy costs in places like Jamaica being cut in half, Jamaica and others were already well on their way to a renewable future.

In 2013, Jamaica signed a deal that would bring 36 MW of wind power for $63 million, which would help it divest from diesel oil in the long-term. By investing heavily in renewables now, the islands can avoid paying for diesel in the future… No matter how the price fluctuates. Mazurier says that this is the key for these Caribbean island nations, who don’t have multimillion dollar climate budgets. These nations cannot just throw money at the problem in hopes that they can play a role in the ultimate cooling of the climate. Their emissions are negligible in the grand scheme of things. The only aspect that can get these nations to buy in if they know they will ultimately pay less for energy than they do now. The positives for the overall climate and the state of the planet are simply a secondary byproduct of these finance-driven deals.

Whichever way it breaks out, says Mazurier, the Caribbean turn toward renewable energy is a refreshing and encouraging sign. The question now becomes: Can the larger nations take note of their island peers? More

 

Friday, May 1, 2015

Elon Musk debuts the Tesla Powerwall

Why Tesla’s announcement is such a big deal: The coming revolution in energy storage

Tesla CEO Elon Musk presented his new Powerwall solar batteries on April 30, 2015. Musk says the batteries could dramatically reduce the use of fossil fuels by replacing use of the power grid. (AP)

Late Thursday, the glitzy electric car company Tesla Motors, run by billionaire Elon Musk, ceased to be just a car company. As was widely expected, Tesla announced that it is offering a home battery product, which people can use to store energy from their solar panels or to backstop their homes against blackouts, and also larger scale versions that could perform similar roles for companies or even parts of the grid.

The anticipation leading up to the announcement has been intense — words like “zeitgeist” are being used — which itself is one reason why the moment for “energy storage,” as energy wonks put it to describe batteries and other technologies that save energy for later use, may finally be arriving. Prices for batteries have already been dropping, but if Tesla adds a “coolness factor” to the equation, people might even be willing to stretch their finances to buy one.

The truth, though, is Tesla isn’t the only company in the battery game, and whatever happens with Tesla, this market is expected to grow. A study by GTM Research and the Energy Storage Association earlier this year found that while storage remains relatively niche — the market was sized at just $128 million in 2014 — it also grew 40 percent last year, and three times as many installations are expected this year.

By 2019, GTM Research forecasts, the overall market will have reached a size of $ 1.5 billion.

“The trend is more and more players being interested in the storage market,” says GTM Research’s Ravi Manghani. Tesla, he says, has two unique advantages — it is building a massive battery-making “gigafactory” which should drive down prices, and it is partnered with solar installer Solar City (Musk is Solar City’s chairman), which “gives Tesla access to a bigger pool of customers, both residential and commercial, who are looking to deploy storage with or without solar.”

The major upshot of more and cheaper batteries and much more widespread energy storage could, in the long term, be a true energy revolution — as well as a much greener planet. Here are just a few ways that storage can dramatically change — and green — the way we get power:

Almost everybody focusing the Tesla story has homed in on home batteries – but in truth, the biggest impact of storage could occur at the level of the electricity grid as a whole. Indeed, GTM Research’s survey of the storage market found that 90 percent of deployments are currently at the utility scale, rather than in homes and businesses.

That’s probably just the beginning: A late 2014 study by the Brattle Group, prepared for mega-Texas utility Oncor, found that energy storage “appears to be on the verge of becoming quite economically attractive” and that the benefits of deploying storage across Texas would “significantly exceed costs” thanks to improved energy grid reliability. Oncor has proposed spending as much as $ 5.2 billion on storage investments in the state. California, too, has directed state utilities to start developing storage capacity – for specifically environmental reasons.

For more power storage doesn’t just hold out the promise of a more reliable grid — it means one that can rely less on fossil fuels and more on renewable energy sources like wind and, especially, solar, which vary based on the time of day or the weather. Or as a 2013 Department of Energy report put it, “storage can ‘smooth’ the delivery of power generated from wind and solar technologies, in effect, increasing the value of renewable power.”

“Storage is a game changer,” said Tom Kimbis, vice president of executive affairs at the Solar Energy Industries Association, in a statement. That’s for many reasons, according to Kimbis, but one of them is that “grid-tied storage helps system operators manage shifting peak loads, renewable integration, and grid operations.” (In fairness, the wind industry questions how much storage will be needed to add more wind onto the grid.)

Consider how this might work using the example of California, a state that currently ramps up natural gas plants when power demand increases at peak times, explains Gavin Purchas, head of the Environmental Defense Fund’s California clean energy program.

In California, “renewable energy creates a load of energy in the day, then it drops off in the evening, and that leaves you with a big gap that you need to fill,” says Purchas. “If you had a plenitude of storage devices, way down the road, then you essentially would be able to charge up those storage devices during the day, and then dispatch them during the night, when the sun goes down. Essentially it allows you to defer when the solar power is used.”

This will be appealing to power companies, notes Purchas, because “gas is very quick to respond, but it’s not anywhere near as quick as battery, which can be done in seconds, as opposed to minutes with gas.” The consequences of adding large amounts of storage to the grid, then, could be not only a lot fewer greenhouse gas emissions, but also better performance.

2. Greening suburban homes and, maybe, their electric cars, too.

Shifting away from the grid to the home, batteries or other forms of storage have an equally profound potential, especially when paired with rooftop solar panels.

Currently, rooftop solar users are able to draw power during the day and, under net metering arrangements, return some of it to the grid and thus lower their bills. This has led to a great boom in individual solar installations, but there’s the same problem here as there is with the grid as a whole: Solar tapers off with the sun, but you still need a lot of power throughout the evening and overnight.

But storing excess solar power with batteries, and then switching them on once the solar panels stop drawing from the sun, makes a dramatic difference. Homes could shift even further away from reliance on the grid, while also using much more green power.

Moreover, they’d also be using it at a time of day when its environmental impact is greater. “If you think about solar, when it’s producing in the middle of the day, the environmental footprint is relatively modest,” explains Dartmouth College business professor Erin Mansur. That’s because at this time of day, Mansur explains, solar is more likely to be displacing electricity generated from less carbon intensive natural gas. “But if you can shift some of that to the evening … if you can save some to the middle of the night, it’s more likely to be displacing coal,” says Mansur.

Some day, perhaps, some of the sun-sourced and power could even be widely used to recharge electric vehicles like Teslas — which would solve another problem. According to a much discussed 2012 paper by Mansur and two colleagues, electric vehicles can have a surprisingly high energy footprint despite their lack of tailpipe emissions because they are often charged over night, a time when the power provided to the grid (said to be “on the margin”) often comes from coal.

But if electric vehicles could be charged overnight using stored power from the sun, that problem also goes away.

All of which contributes to a larger vision outlined recently by a team of researchers at the University of California at Los Angeles’s Institute of the Environment and Sustainability in which suburban homeowners, who can install rooftop solar combined with batteries and drive electric vehicles, start to dramatically reduce their carbon footprints — which have long tended to be bigger in suburbia, due in part to the need for long commutes — and also their home energy bills.

Granted, it’s still a vision right now, rather than a reality for the overwhelming number of suburbanites — but energy storage is a key part of that vision.

3. Helping adjust to smart energy pricing

And there’s another factor to add into the equation, which shows how energy storage could further help homeowners save money.

For a long time, economists have said that we need “smart” or “dynamic” electricity pricing — that people should be charged more for power at times of high energy demand, such as in the afternoon and early evening, when the actual electricity itself costs more on wholesale markets. This would lead to lower prices overall, but higher prices during peak periods. And slowly, such smart pricing schemes are being introduced to the grid (largely on a voluntary basis).

But if you combine “smart” pricing with solar and energy storage, then homeowners have another potential benefit, explains Ravi Manghani of GTM Research. They could store excess power from their solar panels during the day, and then actually use it in the evening when prices for electricity go up — and avoid the higher cost. “There’s an economic case to store the excess solar generation and use it during evening hours,” explains Manghani by email. (For more explanation, see here.)

Notably, if there are future reductions in how much money solar panel owners can make selling excess power back to the grid — and that’s one thing the current pushback against net metering wants to achieve — then energy storage comes in and gives panel owners a new way for using that power.

“Storage increases the options,” explains Sean Gallagher, vice president of state affairs at the Solar Energy Industries Association. “It’s an enabling technology for solar. It allows customers to meet more scenarios economically.”

So in sum — cheaper, more easily available energy storage helps at the scale of the power grid, and also at the level of our homes, to further advantage cleaner, renewable energy. So if the economics of storage are finally starting to line up — and its business side to ramp up — that can only be good news for the planet. More

 

Wednesday, April 15, 2015

Clean Energy Initiatives Announced at US-CARICOM Summit

9 April 2015: US President Barack Obama and leaders from the Caribbean Community (CARICOM) met in Kingston, Jamaica, for a US-CARICOM Summit that focused largely on energy security, affordable energy and climate change mitigation. In conjunction with the Summit, the US announced increased support for the Caribbean through a number of energy and climate initiatives.


In his remarks to the Summit, held 9 April 2015, Obama noted Caribbean countries' particular vulnerability to climate change and especially high costs of energy. Caribbean States, which rely greatly on imported fuel, will take part in an Energy Security Task Force alongside the US and Central American countries to work on energy sector reform, regional integration and clean energy development, according to the White House.


To aid in the goal of developing clean sources of energy, the US announced it will launch a Clean Energy Finance Facility for the Caribbean and Central America (CEFF-CCA). The US$20 million facility will provide early stage financing, in hopes of catalyzing additional sources of public and private sector investment. The US Overseas Private Investment Corporation (OPIC) and US Trade and Development Agency (USTDA) will coordinate the Facility, with the support of the US Agency for International Development (USAID) and the US Department of State. According to OPIC, the CEFF-CCA mirrors a similar programme designed for Africa - the US-Africa Clean Energy Finance Initiative (ACEF).


OPIC, which formed a dedicated financing and insurance team for the Caribbean renewable energy sector in January 2015, is financing a 36-megawatt (MW) wind farm and is planning to finance a 20-MW solar farm, both in Jamaica. OPIC is also focusing on greening tourism, the region's largest energy user. The Caribbean Hotel Energy Efficiency and Renewables (CHEER) initiative, in partnership with the US Department of Energy's Pacific Northwest National Laboratory, looks to improve energy and water efficiency and share best practices in the hotel and tourism industry. USAID will complement the project with energy efficiency and renewables financial tools for the Eastern Caribbean.


USAID is also undertaking a Clean Energy Program with the Government of Jamaica and the private sector "to establish the pre-conditions for clean energy development, optimize renewable energy integration, and accelerate private-sector clean energy investment." The Department of Energy is releasing the 'Energy Scenario Planning Tool,' a publication intended to help all island communities reach similar goals. The Tool builds on the Department's earlier 'Energy Transitions: Island Playbook.'



Leaders at the Summit also addressed the underlying technology needed to advance renewables and energy efficiency, with the US Department of Energy and Jamaican Ministry of Science, Technology, Energy, and Mining signing a statement of intent to cooperate on sustainable energy innovation, in such areas as: energy conservation, energy infrastructure, micro grids and energy storage, fuel diversification, and energy policy. [White House Fact Sheet] [CARICOM Press Release] [OPIC Press Release] More